The Visual Problem of High Energy Physics, Gravitation and Cosmology

Authors

  • Leo G. Sapogin

  • V. A. Dzhanibekov

  • Yu. A. Ryabov

Keywords:

unitary quantum theory, standard model, quantum electrodynamics, maxwell equations, schrdinger equation, solid state

Abstract

This article describes a model of Unitary Quantum Field theory where the particle is represented as a wave packet. The frequency dispersion equation is chosen so that the packet periodically appears and disappears without form changings. The envelope of the process is identified with a conventional wave function. Equation of such a field is nonlinear and relativistically invariant. With proper adjustments, they are reduced to Dirac, Schrdinger and Hamilton-Jacobi equations. A number of new experimental effects have been predicted both for high and low energies. Fine structure constant (1/137) was determined in 1988, masses of numerous elementary particles starting from electron were evaluated in 2007 with accuracy less than 1 %.2 pentaquarks, +barion, Higgs boson and particle 28 GeV were discovered 11 years later, all of them were evaluated with high accuracy before.

How to Cite

Leo G. Sapogin, V. A. Dzhanibekov, & Yu. A. Ryabov. (2019). The Visual Problem of High Energy Physics, Gravitation and Cosmology. Global Journal of Science Frontier Research, 19(A2), 1–36. Retrieved from https://journalofscience.org/index.php/GJSFR/article/view/2442

The Visual Problem of High Energy Physics, Gravitation and Cosmology

Published

2019-01-15